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首页> 外文期刊>Chemistry: A European journal >Thuggacins, macrolide antibiotics active against Mycobacterium tuberculosis: Isolation from myxobacteria, structure elucidation, conformation analysis and biosynthesis
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Thuggacins, macrolide antibiotics active against Mycobacterium tuberculosis: Isolation from myxobacteria, structure elucidation, conformation analysis and biosynthesis

机译:Thuggacins,对结核分枝杆菌有活性的大环内酯类抗生素:从黏杆菌分离,结构阐明,构象分析和生物合成

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摘要

Two novel antibiotics, thuggacin A (1) and B (2), were isolated from the myxobacterium Sorangium cellulosum. 1 and 2 are unique thiazole-containing macrolides with side chains on both sides of the lactone group. Upon standing in solution, thuggacin A (1) rearranges by acyl migration of the lactone group to give a mixture with thuggacins B (2) and C (3). NOEs and vicinal coupling constants within the lactone ring provided distinct data for the generation of a structure model by PM3 calculations, which allowed an analysis of the conformation in solution and the relative configuration of six asymmetric centres. A minor sorangium metabolite was identified as 13-methyl-thuggacin A (4). Furthermore, two natural thuggacin variants, 5 and 6, were found in another myxobacterium, Chondromyces crocatus. In these variants, one side chain is replaced by a methyl group and a hydroxy group is repositioned to give a primary alcohol at the former methyl site, in an a position with respect to the thiazole ring. 1 proved to be active against clinical isolates and reference strains of Mycobacterium tuberculosis. Preliminary studies on the mechanism of action indicate inhibition of the cellular electron-transport chain.
机译:从粘液细菌Sorangium cellulosum中分离了两种新型抗生素,thuggacin A(1)和B(2)。 1和2是独特的含噻唑的大环内酯类,在内酯基团的两侧均带有侧链。在溶液中静置时,苏糖精A(1)通过内酯基团的酰基转移而重排,得到与苏糖精B(2)和C(3)的混合物。内酯环中的NOE和邻位偶合常数为通过PM3计算生成结构模型提供了独特的数据,从而可以分析溶液中的构象以及六个不对称中心的相对构型。一种次要的钠盐代谢产物被鉴定为13-甲基-thuggacin A(4)。此外,在另一种粘杆菌(Chondromyces crocatus)中发现了两个天然thuggacin变体5和6。在这些变体中,一个侧链被甲基取代,并且羟基被重新定位以在相对于噻唑环的位置的前一个甲基位上产生伯醇。 1被证明对结核分枝杆菌的临床分离株和参考菌株具有活性。对作用机理的初步研究表明抑制了细胞的电子传输链。

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